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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Two-dimensional numerical study of atmospheric pressure glows in helium with impurities
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Two-dimensional numerical study of atmospheric pressure glows in helium with impurities

机译:含杂质氦气中大气压辉光的二维数值研究

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A two-dimensional numerical model of an atmospheric pressure glow (APG) discharge was developed. The simulation of the APG in helium with some nitrogen impurities successfully reproduced the discharge evolution during the breakdown process observed in experiments. The results show that the breakdown first appears at the central region of the discharge followed by the axial and radial propagation of the ionization wave. The space charge induced electric field is the main reason for the radial propagation. Penning ionization is the dominant ionization mechanism in the discharge. It leads to an elevated pre-ionization level before the discharge pulse that is essential for maintaining a uniform discharge. Increasing the driving frequency favours a transition from a filamentary to a uniform grow discharge. An increasing number of filaments with driving frequency are observed. The coalescence of the filaments at sufficiently high frequency leads to a uniform discharge. Decreasing the dielectric permittivity of the barriers limits the discharge current and leads to a shift of the discharge towards a uniform Townsend discharge.
机译:建立了大气压辉光放电的二维数值模型。在氦气中加入一些氮杂质后,APG的模拟成功再现了在实验中观察到的击穿过程中放电的演变。结果表明,击穿首先出现在放电的中心区域,然后是电离波的轴向和径向传播。空间电荷感应电场是径向传播的主要原因。潘宁电离是放电中的主要电离机理。这导致在放电脉冲之前升高的预电离水平,这对于保持均匀放电至关重要。驱动频率的增加有利于从丝状到均匀生长放电的过渡。观察到随着驱动频率的灯丝数量增加。细丝以足够高的频率聚结导致均匀的放电。降低势垒的介电常数会限制放电电流,并导致放电向均匀的Townsend放电移动。

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